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root/radiance/ray/src/rt/rv2.c
Revision: 2.59
Committed: Wed Jan 14 20:27:00 2009 UTC (15 years, 3 months ago) by greg
Content type: text/plain
Branch: MAIN
CVS Tags: rad4R0
Changes since 2.58: +4 -1 lines
Log Message:
Nullify newparam setting for non-rendering changes

File Contents

# Content
1 #ifndef lint
2 static const char RCSid[] = "$Id: rv2.c,v 2.58 2008/09/05 19:45:41 greg Exp $";
3 #endif
4 /*
5 * rv2.c - command routines used in tracing a view.
6 *
7 * External symbols declared in rpaint.h
8 */
9
10 #include "copyright.h"
11
12 #include <ctype.h>
13 #include <string.h>
14
15 #include "platform.h"
16 #include "ray.h"
17 #include "source.h"
18 #include "ambient.h"
19 #include "otypes.h"
20 #include "rpaint.h"
21
22 extern int psample; /* pixel sample size */
23 extern double maxdiff; /* max. sample difference */
24
25 #define CTRL(c) ((c)-'@')
26
27 #ifdef SMLFLT
28 #define sscanvec(s,v) (sscanf(s,"%f %f %f",v,v+1,v+2)==3)
29 #else
30 #define sscanvec(s,v) (sscanf(s,"%lf %lf %lf",v,v+1,v+2)==3)
31 #endif
32
33 extern char rifname[128]; /* rad input file name */
34
35 extern char *progname;
36 extern char *octname;
37
38
39 void
40 getframe( /* get a new frame */
41 char *s
42 )
43 {
44 if (getrect(s, &pframe) < 0)
45 return;
46 pdepth = 0;
47 }
48
49
50 void
51 getrepaint( /* get area and repaint */
52 char *s
53 )
54 {
55 RECT box;
56
57 if (getrect(s, &box) < 0)
58 return;
59 paintrect(&ptrunk, &box);
60 }
61
62
63 void
64 getview( /* get/show view parameters */
65 char *s
66 )
67 {
68 FILE *fp;
69 char buf[128];
70 char *fname;
71 int change = 0;
72 VIEW nv = ourview;
73
74 while (isspace(*s))
75 s++;
76 if (*s == '-') { /* command line parameters */
77 if (sscanview(&nv, s))
78 newview(&nv);
79 else
80 error(COMMAND, "bad view option(s)");
81 return;
82 }
83 if (sscanf(s, "%s", buf) == 1) { /* write parameters to a file */
84 if ((fname = getpath(buf, NULL, 0)) == NULL ||
85 (fp = fopen(fname, "a")) == NULL) {
86 sprintf(errmsg, "cannot open \"%s\"", buf);
87 error(COMMAND, errmsg);
88 return;
89 }
90 fputs(progname, fp);
91 fprintview(&ourview, fp);
92 fputs(sskip(s), fp);
93 putc('\n', fp);
94 fclose(fp);
95 return;
96 }
97 sprintf(buf, "view type (%c): ", ourview.type);
98 (*dev->comout)(buf);
99 (*dev->comin)(buf, NULL);
100 if (buf[0] == CTRL('C')) return;
101 if (buf[0] && buf[0] != ourview.type) {
102 nv.type = buf[0];
103 change++;
104 }
105 sprintf(buf, "view point (%.6g %.6g %.6g): ",
106 ourview.vp[0], ourview.vp[1], ourview.vp[2]);
107 (*dev->comout)(buf);
108 (*dev->comin)(buf, NULL);
109 if (buf[0] == CTRL('C')) return;
110 if (sscanvec(buf, nv.vp))
111 change++;
112 sprintf(buf, "view direction (%.6g %.6g %.6g): ",
113 ourview.vdir[0]*ourview.vdist,
114 ourview.vdir[1]*ourview.vdist,
115 ourview.vdir[2]*ourview.vdist);
116 (*dev->comout)(buf);
117 (*dev->comin)(buf, NULL);
118 if (buf[0] == CTRL('C')) return;
119 if (sscanvec(buf, nv.vdir)) {
120 nv.vdist = 1.;
121 change++;
122 }
123 sprintf(buf, "view up (%.6g %.6g %.6g): ",
124 ourview.vup[0], ourview.vup[1], ourview.vup[2]);
125 (*dev->comout)(buf);
126 (*dev->comin)(buf, NULL);
127 if (buf[0] == CTRL('C')) return;
128 if (sscanvec(buf, nv.vup))
129 change++;
130 sprintf(buf, "view horiz and vert size (%.6g %.6g): ",
131 ourview.horiz, ourview.vert);
132 (*dev->comout)(buf);
133 (*dev->comin)(buf, NULL);
134 if (buf[0] == CTRL('C')) return;
135 if (sscanf(buf, "%lf %lf", &nv.horiz, &nv.vert) == 2)
136 change++;
137 sprintf(buf, "fore and aft clipping plane (%.6g %.6g): ",
138 ourview.vfore, ourview.vaft);
139 (*dev->comout)(buf);
140 (*dev->comin)(buf, NULL);
141 if (buf[0] == CTRL('C')) return;
142 if (sscanf(buf, "%lf %lf", &nv.vfore, &nv.vaft) == 2)
143 change++;
144 sprintf(buf, "view shift and lift (%.6g %.6g): ",
145 ourview.hoff, ourview.voff);
146 (*dev->comout)(buf);
147 (*dev->comin)(buf, NULL);
148 if (buf[0] == CTRL('C')) return;
149 if (sscanf(buf, "%lf %lf", &nv.hoff, &nv.voff) == 2)
150 change++;
151 if (change)
152 newview(&nv);
153 }
154
155
156 void
157 lastview( /* return to a previous view */
158 char *s
159 )
160 {
161 char buf[128];
162 char *fname;
163 int success;
164 VIEW nv;
165
166 if (sscanf(s, "%s", buf) == 1) { /* get parameters from a file */
167 nv = stdview;
168 if ((fname = getpath(buf, "", R_OK)) == NULL ||
169 (success = viewfile(fname, &nv, NULL)) == -1) {
170 sprintf(errmsg, "cannot open \"%s\"", buf);
171 error(COMMAND, errmsg);
172 return;
173 }
174 if (!success)
175 error(COMMAND, "wrong file format");
176 else
177 newview(&nv);
178 return;
179 }
180 if (oldview.type == 0) { /* no old view! */
181 error(COMMAND, "no previous view");
182 return;
183 }
184 nv = ourview;
185 ourview = oldview;
186 oldview = nv;
187 newimage(NULL);
188 }
189
190
191 void
192 saveview( /* save view to rad file */
193 char *s
194 )
195 {
196 char view[64];
197 char *fname;
198 FILE *fp;
199
200 if (*atos(view, sizeof(view), s)) {
201 if (isint(view)) {
202 error(COMMAND, "cannot write view by number");
203 return;
204 }
205 s = sskip(s);
206 }
207 while (isspace(*s))
208 s++;
209 if (*s)
210 atos(rifname, sizeof(rifname), s);
211 else if (rifname[0] == '\0') {
212 error(COMMAND, "no previous rad file");
213 return;
214 }
215 if ((fname = getpath(rifname, NULL, 0)) == NULL ||
216 (fp = fopen(fname, "a")) == NULL) {
217 sprintf(errmsg, "cannot open \"%s\"", rifname);
218 error(COMMAND, errmsg);
219 return;
220 }
221 fputs("view= ", fp);
222 fputs(view, fp);
223 fprintview(&ourview, fp);
224 putc('\n', fp);
225 fclose(fp);
226 }
227
228
229 void
230 loadview( /* load view from rad file */
231 char *s
232 )
233 {
234 char buf[512];
235 char *fname;
236 FILE *fp;
237 VIEW nv;
238
239 strcpy(buf, "rad -n -s -V -v ");
240 if (sscanf(s, "%s", buf+strlen(buf)) == 1)
241 s = sskip(s);
242 else
243 strcat(buf, "1");
244 if (*s)
245 atos(rifname, sizeof(rifname), s);
246 else if (rifname[0] == '\0') {
247 error(COMMAND, "no previous rad file");
248 return;
249 }
250 if ((fname = getpath(rifname, "", R_OK)) == NULL) {
251 sprintf(errmsg, "cannot access \"%s\"", rifname);
252 error(COMMAND, errmsg);
253 return;
254 }
255 sprintf(buf+strlen(buf), " %s", fname);
256 if ((fp = popen(buf, "r")) == NULL) {
257 error(COMMAND, "cannot run rad");
258 return;
259 }
260 buf[0] = '\0';
261 fgets(buf, sizeof(buf), fp);
262 pclose(fp);
263 nv = stdview;
264 if (!sscanview(&nv, buf)) {
265 error(COMMAND, "rad error -- no such view?");
266 return;
267 }
268 newview(&nv);
269 }
270
271
272 void
273 getaim( /* aim camera */
274 char *s
275 )
276 {
277 VIEW nv = ourview;
278 double zfact;
279
280 if (getinterest(s, 1, nv.vdir, &zfact) < 0)
281 return;
282 zoomview(&nv, zfact);
283 newview(&nv);
284 }
285
286
287 void
288 getfocus( /* set focus distance */
289 char *s
290 )
291 {
292 char buf[64];
293 double dist;
294
295 if (sscanf(s, "%lf", &dist) < 1) {
296 int x, y;
297 RAY thisray;
298 if (dev->getcur == NULL)
299 return;
300 (*dev->comout)("Pick focus point\n");
301 if ((*dev->getcur)(&x, &y) == ABORT)
302 return;
303 if ((thisray.rmax = viewray(thisray.rorg, thisray.rdir,
304 &ourview, (x+.5)/hresolu, (y+.5)/vresolu)) < -FTINY) {
305 error(COMMAND, "not on image");
306 return;
307 }
308 rayorigin(&thisray, PRIMARY, NULL, NULL);
309 if (!localhit(&thisray, &thescene)) {
310 error(COMMAND, "not a local object");
311 return;
312 }
313 dist = thisray.rot;
314 } else if (dist <= .0) {
315 error(COMMAND, "focus distance must be positive");
316 return;
317 }
318 ourview.vdist = dist;
319 sprintf(buf, "Focus distance set to %f\n", dist);
320 (*dev->comout)(buf);
321 }
322
323
324 void
325 getmove( /* move camera */
326 char *s
327 )
328 {
329 FVECT vc;
330 double mag;
331
332 if (getinterest(s, 0, vc, &mag) < 0)
333 return;
334 moveview(0.0, 0.0, mag, vc);
335 }
336
337
338 void
339 getrotate( /* rotate camera */
340 char *s
341 )
342 {
343 VIEW nv = ourview;
344 FVECT v1;
345 double angle, elev, zfact;
346
347 elev = 0.0; zfact = 1.0;
348 if (sscanf(s, "%lf %lf %lf", &angle, &elev, &zfact) < 1) {
349 error(COMMAND, "missing angle");
350 return;
351 }
352 spinvector(nv.vdir, ourview.vdir, ourview.vup, angle*(PI/180.));
353 if (elev != 0.0) {
354 fcross(v1, nv.vdir, ourview.vup);
355 normalize(v1);
356 spinvector(nv.vdir, nv.vdir, v1, elev*(PI/180.));
357 }
358 zoomview(&nv, zfact);
359 newview(&nv);
360 }
361
362
363 void
364 getpivot( /* pivot viewpoint */
365 char *s
366 )
367 {
368 FVECT vc;
369 double angle, elev, mag;
370
371 elev = 0.0;
372 if (sscanf(s, "%lf %lf", &angle, &elev) < 1) {
373 error(COMMAND, "missing angle");
374 return;
375 }
376 if (getinterest(sskip2(s,2), 0, vc, &mag) < 0)
377 return;
378 moveview(angle, elev, mag, vc);
379 }
380
381
382 void
383 getexposure( /* get new exposure */
384 char *s
385 )
386 {
387 char buf[128];
388 char *cp;
389 int x, y;
390 PNODE *p = &ptrunk;
391 int adapt = 0;
392 double e = 1.0;
393
394 for (cp = s; isspace(*cp); cp++)
395 ;
396 if (*cp == '@') {
397 adapt++;
398 while (isspace(*++cp))
399 ;
400 }
401 if (*cp == '\0') { /* normalize to point */
402 if (dev->getcur == NULL)
403 return;
404 (*dev->comout)("Pick point for exposure\n");
405 if ((*dev->getcur)(&x, &y) == ABORT)
406 return;
407 p = findrect(x, y, &ptrunk, -1);
408 } else {
409 if (*cp == '=') { /* absolute setting */
410 p = NULL;
411 e = 1.0/exposure;
412 for (cp++; isspace(*cp); cp++)
413 ;
414 if (*cp == '\0') { /* interactive */
415 sprintf(buf, "exposure (%f): ", exposure);
416 (*dev->comout)(buf);
417 (*dev->comin)(buf, NULL);
418 for (cp = buf; isspace(*cp); cp++)
419 ;
420 if (*cp == '\0')
421 return;
422 }
423 }
424 if (*cp == '+' || *cp == '-') /* f-stops */
425 e *= pow(2.0, atof(cp));
426 else /* multiplier */
427 e *= atof(cp);
428 }
429 if (p != NULL) { /* relative setting */
430 compavg(p);
431 if (bright(p->v) < 1e-15) {
432 error(COMMAND, "cannot normalize to zero");
433 return;
434 }
435 if (adapt)
436 e *= 106./pow(1.219+pow(luminance(p->v)/exposure,.4),2.5)/exposure;
437 else
438 e *= 0.5 / bright(p->v);
439 }
440 if (e <= FTINY || fabs(1.0 - e) <= FTINY)
441 return;
442 scalepict(&ptrunk, e);
443 exposure *= e;
444 redraw();
445 }
446
447 typedef union {int i; double d; COLOR C;} *MyUptr;
448 #define FEQ(x,y) (fabs((x)-(y)) <= FTINY)
449
450 int
451 getparam( /* get variable from user */
452 char *str,
453 char *dsc,
454 int typ,
455 void *p
456 )
457 {
458 MyUptr ptr = (MyUptr)p;
459 int i0;
460 double d0, d1, d2;
461 char buf[48];
462
463 switch (typ) {
464 case 'i': /* integer */
465 if (sscanf(str, "%d", &i0) != 1) {
466 (*dev->comout)(dsc);
467 sprintf(buf, " (%d): ", ptr->i);
468 (*dev->comout)(buf);
469 (*dev->comin)(buf, NULL);
470 if (sscanf(buf, "%d", &i0) != 1)
471 return(0);
472 }
473 if (ptr->i == i0)
474 return(0);
475 ptr->i = i0;
476 break;
477 case 'r': /* real */
478 if (sscanf(str, "%lf", &d0) != 1) {
479 (*dev->comout)(dsc);
480 sprintf(buf, " (%.6g): ", ptr->d);
481 (*dev->comout)(buf);
482 (*dev->comin)(buf, NULL);
483 if (sscanf(buf, "%lf", &d0) != 1)
484 return(0);
485 }
486 if (FEQ(ptr->d, d0))
487 return(0);
488 ptr->d = d0;
489 break;
490 case 'b': /* boolean */
491 if (sscanf(str, "%1s", buf) != 1) {
492 (*dev->comout)(dsc);
493 sprintf(buf, "? (%c): ", ptr->i ? 'y' : 'n');
494 (*dev->comout)(buf);
495 (*dev->comin)(buf, NULL);
496 if (buf[0] == '\0')
497 return(0);
498 }
499 if (strchr("yY+1tTnN-0fF", buf[0]) == NULL)
500 return(0);
501 i0 = strchr("yY+1tT", buf[0]) != NULL;
502 if (ptr->i == i0)
503 return(0);
504 ptr->i = i0;
505 break;
506 case 'C': /* color */
507 if (sscanf(str, "%lf %lf %lf", &d0, &d1, &d2) != 3) {
508 (*dev->comout)(dsc);
509 sprintf(buf, " (%.6g %.6g %.6g): ",
510 colval(ptr->C,RED),
511 colval(ptr->C,GRN),
512 colval(ptr->C,BLU));
513 (*dev->comout)(buf);
514 (*dev->comin)(buf, NULL);
515 if (sscanf(buf, "%lf %lf %lf", &d0, &d1, &d2) != 3)
516 return(0);
517 }
518 if (FEQ(colval(ptr->C,RED), d0) &&
519 FEQ(colval(ptr->C,GRN), d1) &&
520 FEQ(colval(ptr->C,BLU), d2))
521 return(0);
522 setcolor(ptr->C, d0, d1, d2);
523 break;
524 default:
525 return(0); /* shouldn't happen */
526 }
527 newparam++;
528 return(1);
529 }
530
531
532 void
533 setparam( /* get/set program parameter */
534 char *s
535 )
536 {
537 int prev_newp = newparam;
538 char buf[128];
539
540 if (s[0] == '\0') {
541 (*dev->comout)(
542 "aa ab ad ar as av aw b bv dc dv dj ds dt i lr lw me ma mg ms ps pt sj st u: ");
543 (*dev->comin)(buf, NULL);
544 s = buf;
545 }
546 switch (s[0]) {
547 case 'u': /* uncorrelated sampling */
548 getparam(s+1, "uncorrelated sampling", 'b',
549 (void *)&rand_samp);
550 break;
551 case 'l': /* limit */
552 switch (s[1]) {
553 case 'w': /* weight */
554 getparam(s+2, "limit weight", 'r',
555 (void *)&minweight);
556 break;
557 case 'r': /* reflection */
558 getparam(s+2, "limit reflection", 'i',
559 (void *)&maxdepth);
560 break;
561 default:
562 goto badparam;
563 }
564 break;
565 case 'd': /* direct */
566 switch (s[1]) {
567 case 'j': /* jitter */
568 getparam(s+2, "direct jitter", 'r',
569 (void *)&dstrsrc);
570 break;
571 case 'c': /* certainty */
572 getparam(s+2, "direct certainty", 'r',
573 (void *)&shadcert);
574 break;
575 case 't': /* threshold */
576 getparam(s+2, "direct threshold", 'r',
577 (void *)&shadthresh);
578 break;
579 case 'v': /* visibility */
580 getparam(s+2, "direct visibility", 'b',
581 (void *)&directvis);
582 break;
583 case 's': /* sampling */
584 getparam(s+2, "direct sampling", 'r',
585 (void *)&srcsizerat);
586 break;
587 default:
588 goto badparam;
589 }
590 break;
591 case 'b': /* back faces or black and white */
592 switch (s[1]) {
593 case 'v': /* back face visibility */
594 getparam(s+2, "back face visibility", 'b',
595 (void *)&backvis);
596 break;
597 case '\0': /* black and white */
598 case ' ':
599 case 'y': case 'Y': case 't': case 'T': case '1': case '+':
600 case 'n': case 'N': case 'f': case 'F': case '0': case '-':
601 getparam(s+1, "black and white", 'b',
602 (void *)&greyscale);
603 newparam = prev_newp;
604 break;
605 default:
606 goto badparam;
607 }
608 break;
609 case 'i': /* irradiance */
610 getparam(s+1, "irradiance", 'b',
611 (void *)&do_irrad);
612 break;
613 case 'a': /* ambient */
614 switch (s[1]) {
615 case 'v': /* value */
616 getparam(s+2, "ambient value", 'C',
617 (void *)ambval);
618 break;
619 case 'w': /* weight */
620 getparam(s+2, "ambient value weight", 'i',
621 (void *)&ambvwt);
622 break;
623 case 'a': /* accuracy */
624 if (getparam(s+2, "ambient accuracy", 'r',
625 (void *)&ambacc))
626 setambacc(ambacc);
627 break;
628 case 'd': /* divisions */
629 getparam(s+2, "ambient divisions", 'i',
630 (void *)&ambdiv);
631 break;
632 case 's': /* samples */
633 getparam(s+2, "ambient super-samples", 'i',
634 (void *)&ambssamp);
635 break;
636 case 'b': /* bounces */
637 getparam(s+2, "ambient bounces", 'i',
638 (void *)&ambounce);
639 break;
640 case 'r':
641 if (getparam(s+2, "ambient resolution", 'i',
642 (void *)&ambres))
643 setambres(ambres);
644 break;
645 default:
646 goto badparam;
647 }
648 break;
649 case 'm': /* medium */
650 switch (s[1]) {
651 case 'e': /* extinction coefficient */
652 getparam(s+2, "extinction coefficient", 'C',
653 (void *)cextinction);
654 break;
655 case 'a': /* scattering albedo */
656 getparam(s+2, "scattering albedo", 'C',
657 (void *)salbedo);
658 break;
659 case 'g': /* scattering eccentricity */
660 getparam(s+2, "scattering eccentricity", 'r',
661 (void *)&seccg);
662 break;
663 case 's': /* sampling distance */
664 getparam(s+2, "mist sampling distance", 'r',
665 (void *)&ssampdist);
666 break;
667 default:
668 goto badparam;
669 }
670 break;
671 case 'p': /* pixel */
672 switch (s[1]) {
673 case 's': /* sample */
674 if (getparam(s+2, "pixel sample", 'i',
675 (void *)&psample))
676 pdepth = 0;
677 break;
678 case 't': /* threshold */
679 if (getparam(s+2, "pixel threshold", 'r',
680 (void *)&maxdiff))
681 pdepth = 0;
682 break;
683 default:
684 goto badparam;
685 }
686 newparam = prev_newp;
687 break;
688 case 's': /* specular */
689 switch (s[1]) {
690 case 'j': /* jitter */
691 getparam(s+2, "specular jitter", 'r',
692 (void *)&specjitter);
693 break;
694 case 't': /* threshold */
695 getparam(s+2, "specular threshold", 'r',
696 (void *)&specthresh);
697 break;
698 default:
699 goto badparam;
700 }
701 break;
702 case '\0': /* nothing */
703 break;
704 default:;
705 badparam:
706 *sskip(s) = '\0';
707 sprintf(errmsg, "%s: unknown variable", s);
708 error(COMMAND, errmsg);
709 break;
710 }
711 }
712
713
714 void
715 traceray( /* trace a single ray */
716 char *s
717 )
718 {
719 char buf[128];
720 int x, y;
721 OBJREC *ino;
722 RAY thisray;
723
724 thisray.rmax = 0.0;
725
726 if (!sscanvec(s, thisray.rorg) ||
727 !sscanvec(sskip2(s,3), thisray.rdir)) {
728
729 if (dev->getcur == NULL)
730 return;
731 (*dev->comout)("Pick ray\n");
732 if ((*dev->getcur)(&x, &y) == ABORT)
733 return;
734
735 if ((thisray.rmax = viewray(thisray.rorg, thisray.rdir,
736 &ourview, (x+.5)/hresolu, (y+.5)/vresolu)) < -FTINY) {
737 error(COMMAND, "not on image");
738 return;
739 }
740
741 } else if (normalize(thisray.rdir) == 0.0) {
742 error(COMMAND, "zero ray direction");
743 return;
744 }
745
746 ray_trace(&thisray);
747
748 if (thisray.ro == NULL)
749 (*dev->comout)("ray hit nothing");
750 else {
751 OBJREC *mat = NULL;
752 OBJREC *mod = NULL;
753 char matspec[256];
754 matspec[0] = '\0';
755 if (thisray.ro->omod != OVOID) {
756 mod = objptr(thisray.ro->omod);
757 mat = findmaterial(mod);
758 }
759 if (thisray.rod < 0.0)
760 strcpy(matspec, "back of ");
761 if (mod != NULL) {
762 strcat(matspec, mod->oname);
763 if (mat != mod && mat != NULL)
764 sprintf(matspec+strlen(matspec),
765 " (%s)", mat->oname);
766 } else
767 strcat(matspec, VOIDID);
768 sprintf(buf, "ray hit %s %s \"%s\"", matspec,
769 ofun[thisray.ro->otype].funame,
770 thisray.ro->oname);
771 if ((ino = objptr(thisray.robj)) != thisray.ro)
772 sprintf(buf+strlen(buf), " in %s \"%s\"",
773 ofun[ino->otype].funame, ino->oname);
774 (*dev->comout)(buf);
775 (*dev->comin)(buf, NULL);
776 if (thisray.rot >= FHUGE)
777 (*dev->comout)("at infinity");
778 else {
779 sprintf(buf, "at (%.6g %.6g %.6g) (%.6g)",
780 thisray.rop[0], thisray.rop[1],
781 thisray.rop[2], thisray.rt);
782 (*dev->comout)(buf);
783 }
784 (*dev->comin)(buf, NULL);
785 sprintf(buf, "value (%.5g %.5g %.5g) (%.3gL)",
786 colval(thisray.rcol,RED),
787 colval(thisray.rcol,GRN),
788 colval(thisray.rcol,BLU),
789 luminance(thisray.rcol));
790 (*dev->comout)(buf);
791 }
792 (*dev->comin)(buf, NULL);
793 }
794
795
796 void
797 writepict( /* write the picture to a file */
798 char *s
799 )
800 {
801 static char buf[128];
802 char *fname;
803 FILE *fp;
804 COLR *scanline;
805 int y;
806
807 while (isspace(*s))
808 s++;
809 if (*s)
810 atos(buf, sizeof(buf), s);
811 else if (buf[0] == '\0') {
812 error(COMMAND, "no file");
813 return;
814 }
815 if ((fname = getpath(buf, NULL, 0)) == NULL ||
816 (fp = fopen(fname, "w")) == NULL) {
817 sprintf(errmsg, "cannot open \"%s\"", buf);
818 error(COMMAND, errmsg);
819 return;
820 }
821 SET_FILE_BINARY(fp);
822 (*dev->comout)("writing \"");
823 (*dev->comout)(fname);
824 (*dev->comout)("\"...\n");
825 /* write header */
826 newheader("RADIANCE", fp);
827 fputs(progname, fp);
828 fprintview(&ourview, fp);
829 if (octname != NULL)
830 fprintf(fp, " %s\n", octname);
831 else
832 putc('\n', fp);
833 fprintf(fp, "SOFTWARE= %s\n", VersionID);
834 fputnow(fp);
835 if (exposure != 1.0)
836 fputexpos(exposure, fp);
837 if (dev->pixaspect != 1.0)
838 fputaspect(dev->pixaspect, fp);
839 fputformat(COLRFMT, fp);
840 putc('\n', fp);
841 fprtresolu(hresolu, vresolu, fp);
842
843 scanline = (COLR *)malloc(hresolu*sizeof(COLR));
844 if (scanline == NULL) {
845 error(COMMAND, "not enough memory!");
846 fclose(fp);
847 unlink(fname);
848 return;
849 }
850 for (y = vresolu-1; y >= 0; y--) {
851 getpictcolrs(y, scanline, &ptrunk, hresolu, vresolu);
852 if (fwritecolrs(scanline, hresolu, fp) < 0)
853 break;
854 }
855 free((void *)scanline);
856 if (fclose(fp) < 0)
857 error(COMMAND, "write error");
858 }